An improved heating element connector assembly includes an insulative, rectangular frame with a central opening and a plurality of conductive terminals which are press fit into openings in the frame. The terminals are spaced apart from each other lengthwise of two opposing sidewalls of the frame, and pairs of terminals are aligned with each other between the two sidewalls. A plurality of conductive strips extend across the frame opening to interconnect the pairs of terminals together. The terminals include compliant pin tail portions for receipt by corresponding holes formed in a circuit board of the assembly and deformable head portions for crimping onto the conductive strips.
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1. An improved connector assembly, the assembly comprising:
an insulative frame, the frame including a pair of lengthwise side walls that are interconnected together by widthwise end walls, the side walls and end walls cooperatively defining a central opening of the frame;
a plurality of conductive terminals supported by said frame, the terminals being spaced apart from each other in an array that runs lengthwise in each of said two sidewalls, said terminals being aligned with each other in pairs in said two sidewalls across the frame opening, each of said terminals including tail and contact portions disposed at opposite ends thereof, the terminal tail portions including compliant pin tail portions for receipt by corresponding holes in a circuit board and the terminal contact portions including deformable lugs extending upwardly above a level of said frame sidewalls; and,
a plurality of conductive strips extending across the frame opening and interconnecting pairs of terminals together.
13. An improved connector assembly, the assembly comprising:
an insulative, rectangular frame, the frame including a pair of lengthwise side walls that are interconnected together by widthwise end walls, the side walls and end walls cooperatively defining a central opening of the frame;
a plurality of conductive terminals supported by said frame, the terminals being spaced apart from each other in an array that runs lengthwise in each of said two sidewalls, said terminals being aligned with each other in pairs in said two sidewalls across the frame opening, each of said terminals including a body portion interconnecting tail and contact portions disposed at opposite ends of the body portion, the body portion being wider than either of the tail portion or the contact portion, the terminal tail portions including compliant pin tail portions for receipt by corresponding holes in a circuit board and the terminal contact portions including deformable lugs extending upwardly above a level of said frame sidewalls, the terminal contact portion deformable lugs including a center notch between said lugs; and,
a plurality of conductive strips extending across the frame opening and interconnecting pairs of terminals together.
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This application claims priority from U.S. Provisional Patent Application Ser. No. 60/754,715, filed Dec. 29, 2005, which is hereby incorporated herein by reference.
The present invention relates generally to connectors, and more particularly to connector assemblies used in heating assemblies.
Heating elements are used in a variety of applications. Recently, heating elements have been used in drug delivery systems. In such systems, a heating element is provided as an assembly that has a plurality of individual conductive members held upon a frame. The individual elements are coated with a drug, so that when the elements are energized and heated to a specific temperature, the drug is vaporized and a patient can readily and easily inhale the drug.
Current heating element assemblies use a frame and a series of conductive terminals that are mounted to a circuit board. Conductive foil strips are soldered to the circuit board and the foil to create electrical continuity. This manner of construction is expensive and difficult.
Accordingly, the present invention is directed to a heating element connector structure of simplified and reliable construction that has a low cost of manufacture.
Accordingly, it is a general object or aspect of the present invention to provide a new and improved heating element connector assembly of simplified construction and reduced cost.
It is another object or aspect of the present invention to provide a reliable electrical contact structure for use in a heating element assembly that utilizes only mechanical connections rather than soldered connections and in which the mechanical connections serve to connect together individual conductive strips to conductive terminals.
Yet another object or aspect of the present invention is to provide an improved heating element connector assembly including an insulative, rectangular frame with a central opening, a plurality of conductive terminals disposed in the frame, the terminal being spaced apart from each other lengthwise of two opposing sidewalls of the frame, the terminal further being aligned with each other as between the two sidewalls, and a plurality of conductive strips extending across the frame opening and interconnecting pairs of terminals together, the terminals including compliant pin tail portions for receipt by corresponding holes form in a circuit board associated with the assembly.
Yet a still further object or aspect of an embodiment of the present invention is to provide a heating element connector assembly of the type described above, wherein the terminals include contact portions in the form of posts that can be deformed, as be mushrooming or deadheading into a flattened state in order to connect the conductive strip to the terminal.
In accordance with the present invention, an insulative frame is provided in the form of an open rectangle. The frame has two side walls that are interconnected by a pair of end walls, the end walls preferably being of a shorter length than the side walls to give the frame a rectangular configuration. The frame side walls have a plurality of terminal-receiving cavities disposed in them. These cavities are arranged in an array that runs lengthwise of each frame side wall, and each such cavity receives only a single terminal. The terminals are further aligned together across the frame opening in pairs of terminals.
The assembly also includes a plurality of conductive strips that extend across the frame opening and which interconnect aligned pairs of the terminals together. These conductive strips are preferably formed from a conductive foil, and the foil is further preferably formed with an upward bow in it so that the central portions of the strips rise to a level above the top of the frame.
The terminals are of a press fit style and include a body portion that interconnects a contact portion to a tail portion. The tail portion, in the illustrated embodiment of the invention, takes the form of compliant pins so that the assembly and its terminals may be easily and reliably mounted to a supporting circuit board. The circuit board will have heating circuits disposed thereon which are connected to the terminals so that current may be passed through the strips. The strips are coated with a drug which is vaporized when the strips are energized.
The terminals further have contact portions that rise up from the body portions. The contact portions are best described as deformable lugs, and to facilitate their deforming, the lugs may include center notches. A deforming tool may be used with a center punch or the like to contact the lug and deform it so that, in the illustrated embodiment, the lug preferably deforms within the plane of the terminal body portion. The terminal-receiving cavities are formed with inner steps that act as stop surfaces and which engage corresponding shoulders that are formed on the terminal body portions. These shoulders extend outwardly sideways from the body portions.
The terminal body portions have flat opposing ends. The bottom ends form surfaces that may be used to insert the terminals into their receiving cavities and the top ends form reaction surfaces against which the aforementioned punch may contact or deform the contact portions.
These and other objects, aspects, embodiments, features and advantages of the present invention will be clearly understood through a consideration of the following detailed description. It will be understood that the embodiments described are illustrative of some of the applications of the principles of the present invention. Modifications may be made without departing from the sprit and scope of the invention, including those combinations of features that are individually disclosed or claimed herein.
In the course of this detailed description, the reference will be frequently made to the attached drawings in which:
The strips 22 each define an individual heating element of the assembly, which can be heated when a current is passed through the strip 22. In this regard, the strips 22 are supported by an insulative frame 24, and the frame 24 contains a plurality of conductive terminals 26, as illustrated in
The strips 22 are formed as part of an overall carrier strip or assembly 40 that is also configured to match the configuration of the frame 24 and which is shown as rectangular in the drawings. The carrier strip 40 has advancement and registration openings 42 formed along opposing longitudinal edges thereof and it also has a series of transverse slots 44 that are shown as positioned between the edge openings 42. These slots 44 serve to define the body portions 45 of the strips 22. The ends of the body portions 45 of the strips contain attachment holes 46 which will receive the contact portion of a terminal therein
The terminals 26 further have wide body portion 50 as shown. The terminal contact portions 27 can be see in
The terminals 26 are received in terminal-receiving cavities 60 that are best shown in
The terminal body portions 50 also can be seen to include opposing flat ends 57, 58. The bottom ends form first reaction surfaces 58 against which a tool (not shown) may press in order to insert the terminals 26 into their terminal-receiving cavities 60. The top flat ends 57 of the terminals 26 likewise form second reaction surfaces against which the aforementioned punch 100 may deform the contact lugs 52. These second reaction surfaces may bear against a surface in a loading device or jig and serve as a second stop surface that limits the extent to which the terminals 26 may be inserted into their associated cavities 60.
The conductive strips preferably have a length that is greater than the distance separating the frame sidewalls 30b so that the center portions of the strips 22 are crowned, or rise above or are spaced away from the top surfaces of the frame 24 as shown in the Figures. The attachment openings 46 of the strips 22 may be as shown in drawings, openings that run lengthwise of the strips 22 so that the deformable lugs 52 of the terminals 26 will deform in a direction perpendicular to the extent of the openings 46. This is shown best in
While the preferred embodiment of the invention have been shown and described, it will be apparent to those skilled in the art that changes and modifications may be made therein, including combinations of the various features described herein, without departing from the spirit of the invention, the scope of which is defined by the appended claims.
Nelson, Richard A., Avery, Hazelton P., Purkis, Timothy E., Galauner, Charles, Menn, Gregory, Faje, Richard A.
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